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MAX4238-MAX4239.pdf
Voltage VOS (Note 1) 0.1 2 µV Long-Term Offset Drift 50 nV/1000hr Input Bias Current B (Note 2) 1 pA Input Offset Current IOS (Note 2) 2 pA Peak-to-Peak Input Noise VoltageenP-P RS= 100Ω, 0.01Hz to 10Hz 1.5 µVP-P Input Voltage-Noise Density en f = 1kHz 30 NV/√Hz Common-Mode Input GND V CC VCM Inferred
in „Meßverstärker für 1/f-Rauschen 0.1 - 10 Hz“ · Analoge Elektronik und Schaltungstechnik ·
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avrdude1.txt
[ff] . [ff] . [80] . [93] . [80] . [00] . [e0] . [e6] . [f0] . [e0] . [e8] . [0f] . [f1] . [1d] . [90] . [83] . [ff] . [91] . [ef] . [91] . [9f] . [91] . [8f] . [91] . [0f] . [90] . [0f] . [be] . [0f] . [90] . [1f] . [90] . [18] . [95] . [1f] . [92] . [0f] . [92] . [0f] . [b6] . [0f] . [92] . [11] $
in „avrdude 5.6 unter Linux spinnt“ · Mikrocontroller und Digitale Elektronik ·
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Carel-NTC.pdf
11,63 11,50 76 1,92 1,87 1,82 -29 109,40 105,70 102,20 22 11,32 11,20 11,07 77 1,87 1,82 1,77 -28 103,90 100,50 97,20 23 10,90 10,78 10,66 78 1,81 1,77 1,72 -27 98,68 95,52 92,45 24 10,49 10,38 10,27 79 1,76 1,72 1,67 -26 93,80 90,84 87,97 25 10,10 10,00 9,90 80 1,72 1,67 1,62 -25 89,20 86,43 83,73 26 9,73
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Spektrumanalysator-Display mit Frequenzgang
Hz Auto Manuell -20 TRIG SWP -30 Cont V/R Ratio -40 Corr 1.0000000 Det Typ -50 S.T. pos Spitze -60 PA Gauss EMI -70 C.W. Filter Typ -80 Blank -90 Blank User Key: System, Start Freq 0 Hz Stop Freq 100.00 kHz * RBW 100 Hz VBW 10.000 s SWT 1/1
in „HP461 - Verstärker 20/40dB“ · HF, Funk und Felder · · Oszi-Bilder
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PDF
LMC7111BIM5X.pdf
5 9 max TCV OS Input Offset Voltage 2.0 µV/˚C Average Drift IB Input Bias Current (Note 9) 0.1 1 1 pA 20 20 max I Input Offset Current (Note 9) 0.01 0.5 0.5 pA OS 10 10 max R IN Input Resistance > 10 Tera +PSRR Positive Power Supply 2.7V ≤ V ≤5.0V, 60 55 55 dB Rejection Ratio V = 0V, V O 2.5V 50 50 min
in „PIN Dioden Geiger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC7111BIM5X.pdf
5 9 max TCV OS Input Offset Voltage 2.0 µV/˚C Average Drift IB Input Bias Current (Note 9) 0.1 1 1 pA 20 20 max I Input Offset Current (Note 9) 0.01 0.5 0.5 pA OS 10 10 max R IN Input Resistance > 10 Tera +PSRR Positive Power Supply 2.7V ≤ V ≤5.0V, 60 55 55 dB Rejection Ratio V = 0V, V O 2.5V 50 50 min
in „Einbau-Vorverstärker für E-Gitarre, Ub = 3V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
WLAN_Firmware_Spec_v5_1.pdf
to PA_P0, PA_P1, or PA_P2 (according to PA algorithm) Yes Yes Set to P0, P1, or P2 (according to TPC algorithm) at the highest rate Set to PA_P0, PA_P1, or PA_P2 (according to PA algorithm) at all other rates
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_Dokumentation_V1.2_Stand_29.03.2012.pdf
0 0 0 0 0 0 0 0 1 1 * '* EA4 1 0 0 0 0 0 0 0 0 0 0 * '* * '* Pinbelegungen * '* ------------- * '* PA0 - Bitmuster D0 * '* PA1 - Bitmuster D1 * '* PA2 - Bitmuster D2 * '* PA3 - Bitmuster D3 * '* PA4 - Bitmuster D4 (13. Latch EA0) * '* PA5 - Bitmuster D5 (13. Latch EA1) * '* PA6 - Bitmuster D6 (13. Latch EA2) * '* PA7 - Bitmuster D7 (13. Latch EA3) * '* * '* PB0 - frei * '* PB1 - frei * '* PB2 - frei * '* PB3 - frei * '* PB4 - SD-Card /CS * '* PB5 - SD-Card DataIn, ISP-MOSI * '* PB6 - SD-Card DataOut, ISP-MISO *
in „Tutorial 10x10x10 LED-Cube“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_Dokumentation_V1.6_Stand_04.08.2012.pdf
0 0 0 0 0 0 0 0 1 1 * '* EA4 1 0 0 0 0 0 0 0 0 0 0 * '* * '* Pinbelegungen * '* ------------- * '* PA0 - Bitmuster D0 * '* PA1 - Bitmuster D1 * '* PA2 - Bitmuster D2 * '* PA3 - Bitmuster D3 * '* PA4 - Bitmuster D4 (13. Latch EA0) * '* PA5 - Bitmuster D5 (13. Latch EA1) * '* PA6 - Bitmuster D6 (13. Latch EA2) * '* PA7 - Bitmuster D7 (13. Latch EA3) * '* * '* PB0 - frei * '* PB1 - frei * '* PB2 - frei * '* PB3 - frei * '* PB4 - SD-Card /CS * '* PB5 - SD-Card DataIn, ISP-MOSI * '* PB6 - SD-Card DataOut, ISP-MISO *
in „Tutorial 10x10x10 LED-Cube“ · Mikrocontroller und Digitale Elektronik ·
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Datei
c-sps.c
: 1 Date : 20.01.2004 Author : Schweinester Josef Company : Elektrotechnik Comments: Chip type : AT90S2313 Clock frequency : 4,000000 MHz Memory model : Tiny External SRAM size : 0 Data Stack size : 32 *********************************************/ #include <90s2313.h> #include <delay.h> #define Tog_PA
in „AVR wie SPS Programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
c-sps.c
STK200 Version : 1 Date : 20.01.2004 Author : Schweinester Josef Company : ETS Comments: Chip type : AT90S2313 Clock frequency : 4,000000 MHz Memory model : Tiny External SRAM size : 0 Data Stack size : 32 *********************************************/ #include <90s2313.h> #include <delay.h> #define Tog_PA
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Datei
c-sps_c.txt
STK200 Version : 1 Date : 20.01.2004 Author : Schweinester Josef Company : ETS Comments: Chip type : AT90S2313 Clock frequency : 4,000000 MHz Memory model : Tiny External SRAM size : 0 Data Stack size : 32 *********************************************/ #include <90s2313.h> #include <delay.h> #define Tog_PA
in „AVR wie Siemens Programmieren geht das?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
c-sps_c.txt
STK200 Version : 1 Date : 20.01.2004 Author : Schweinester Josef Company : ETS Comments: Chip type : AT90S2313 Clock frequency : 4,000000 MHz Memory model : Tiny External SRAM size : 0 Data Stack size : 32 *********************************************/ #include <90s2313.h> #include <delay.h> #define Tog_PA
in „Timer0 für Atmega8“ · Mikrocontroller und Digitale Elektronik ·
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hab_80-s.pdf
HAB 80-S Dimensions HAB 80-S family (in mm) Bill of materials System architecture ●● Plastic case PA 66-GF25 ●● Pins Brass tin plated ●● m 25 g + 80 - 80 The optional components are needed if current sensor is outside the control module circuit. Page 2/4 101118/0 LEM reserves the right to carry out
in „Abfragen von mehreren Stromwandlern (PWM, DutyCycle)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Test_Drehgeber.asm
Erläuterung .equ f_CPU = 2000000 ; CPU-Takt in Hz .equ ENC_PORT = PORTE_base ; ENCODER: PE1=QDPH0 | PE2=QDPH90 .equ Count_Enc = 255 ; Zählumfang: 1..32768 (Zählumfang des Encoders) .dseg ; NAME: BYTE 2 ; Variablendeklarierug .cseg ;Beginn eines Code-Segmentes ;******************** START INTERRUPT VECTOREN ***
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Datei
DVM.C
Behandlung eingesetzt. º º º º 19.5.89 Ver 1.2 MiWe - chk_abort in dvm_read eingesetzt. º º º º 14.3.90 MiWe - Nur noch PA.H mit #include einbinden. º º º ÈÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍŒ */ #include <math.h> /* * PROC : fabs */ #include <string.h> /* * PROC : strcmp */ #include <PA.H> /* ÉÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍ» º º º KONSTANTEN º º º ÈÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍÍŒ */ #define NO_DVM
in „Sammelbestellung AR488 kompatibler USB-GPIB Adapter. Interesse?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Taz_Altium_Version.pdf
PIC502 RX0BF OSC1 PIIC59 0 CO1 uP1COL (XCK0/T0)PD4 PIICA02 BIn1 PIC501 RX1BF VSS PII501 1 C 1 2 0 9 90A1CIIP COC 1 20 (OC0B/T1)PD5 10 AIn1 GND PI22 PC21 PICA00 AREF (OC0A/AIN0)PD6 PII1A10 P1 (AIN1)PD7 11 110A1CIIP COC MCP2515 GND 18 810A1CIIP VCCIO AVCC 3 D2 _ECHO CC18 CC16 (SDA1/ICP4/ACO)PE0 30A1CIIP
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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Spektrum eines Spektrumanalysators
32.68 dBm -10 Ref -10.00 dBm Att 0 dB Marker 40.914997 MHz -32.68 dBm 1 -20 -30 -40 -50 -60 -70 -80 -90 -100 -110 Status TRIG Free Cont Corr S.T. PA C.W. Blank Blank Math User Key: System, Center Freq 40.914 MHz RBW 100 Hz VBW 100 Hz Span 46.058 kHz SWT 4.6058 s 1/2 Spitze rechts Spitze links Min suchen
in „40MHz RC-Testsender als 2-FSK“ · HF, Funk und Felder · · Oszi-Bilder
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3D-CAD-Modell einer Leiterplatte
Digital-5V1, C23, C24, 10V, LDO-5V1, 12VDC, GND, MPX2050DP, 5mV/49kPa, 10V, C22, 5V, R17, R16, R15, R14, R13, R12, R11, R10, GPIO15, GPIO14, GPIO07, GPIO10, R1, R2, R3, R4, R5, R6, R7, R8, R9, C12, C11, C10, Tantal1, ADC1, SW1, GND, Temperatursensor1, Wasserstandmessung, Prototyp, 12V DC, 04-2026, 65 x 90
in „Wasserstandsmessung mit RaspberryPico und Drucksensor MPX2050DP“ · Projekte & Code · · Layouts
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PDF
REN_ca3130-a_DST_20170525.pdf
VIOT - 10 - - 10 - V/ C Temperature Drift Input Offset Current |I | V = 7.5V - 0.5 30 - 0.5 20 pA IO S Input Current II VS= 7.5V - 5 50 - 5 30 pA Large-Signal Voltage Gain AOL VO= 10V P-P 50 320 - 50 320 - kV/V RL= 2k 94 110 - 94 110 - dB Common-Mode CMRR 70 90 - 80 90 - dB Rejection Ratio Common-Mode
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Datei
st7735_soft_spi_bluepill_02.ino
STM32 Core BluePill mit Software SPI ST7735 TFT Display 2018 Urheber: Unbekannt */ #define TFT_CS PA4 #define TFT_DC PB7 #define TFT_CLK PA5 #define TFT_MISO PA6 #define TFT_MOSI PA7 /* #define TFT_CS PB12 #define TFT_DC PB7 #define TFT_CLK PB13 #define TFT_MISO PB14 #define TFT_MOSI PB15 */ #define
in „Arduino IDE mit STM32 Core Themen, BluePill, SPI 2“ · Mikrocontroller und Digitale Elektronik ·
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Datei
st7735_hard_spi_bluepill_02.ino
Hardware ST7735 TFT Display 2018 Urheber: Unbekannt */ #include <SPI.h> // Pin Belegung #define SPI_1_CS PA4 #define SPI_1_DC PB7 #define SPI_1_CLK PA5 #define SPI_1_MISO PA6 #define SPI_1_MOSI PA7 #define _swap(a, b) { signed int t; t = a; a = b; b = t;} #define _width 128 #define _height 160 #define ST7735
in „Arduino IDE mit STM32 Core Themen, BluePill, SPI 2“ · Mikrocontroller und Digitale Elektronik ·
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Display eines Spektrumanalysators
Att 10 dB Peak -20 Stopp Freq TRIG -30 300.000000 MHz Free -40 SWP -50 Cont -60 Corr -70 S.T. -80 PA -90 C.W. -100 Blank -110 Blank User Key: System, Start Freq 0 Hz * RBW 30.000 kHz Stop Freq 300.00 MHz VBW 30.000 kHz SWT 333.33 ms Mittenfreq 150.00000 MHz Start Freq 0 Hz Stopp Freq 300.00000 MHz Freq
in „HP461 - Verstärker 20/40dB“ · HF, Funk und Felder · · Oszi-Bilder
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WebSDR Wasserfall-Diagramm einer Funkfrequenz-Anzeige
Questions and remarks about this WebSDR can be sent to the developer and maintainer: pa3fwm@websdr.org (but please check the FAQ first). Please log in by typing your name or callsign here (it will be saved for later visits in a cookie): View: waterfall blind Allow keyboard: 10 30 40 50 60 70 80 90 100 110 120 130 140 153 162 171 180 189 198 207 216 225 GB2 RUS/BLIS SANSY GIY G F RBU D GYB London/ LORAN DCF S DCF CD D ROU S F TDF MRC Médi 1 ISL RUG BBC F MNG Mongo POL Polskie Ra broadcast
in „DCF77 Empfangsprobleme“ · HF, Funk und Felder · · Screenshots
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PDF
de10-nano_a0.pdf
B7 IO_B2_H10 J10 XTALOUT IO_B2_C7 IO_B2_J10 CAD Note: R71 33 18 FX2_PB0 Place near XTALIN pin 0 FX2_PA1 34 PA0 PB0 19 FX2_PB1 EPM570GF100C5N DNI FX2_PA2 35 PA1 PB1 20 FX2_PB2 PA2 PB2 FX2_PA3 36 PA3 PB3 21 FX2_PB3 U21D FX2_PA4 37 PA4 PB4 22 FX2_PB4 C59 FX2_PA5 38 23 FX2_PB5 MAX_SDA J7 K9 FX2_RESETn 33p FX2_PA6 39 PA5 PB5 24 FX2_PB6 DEV_OE DEV_CLRn VCC1P8 50V FX2_PA7 40 PA6 PB6 25 FX2_PB7 C_USB_MAX_TCK H3 E2 USB_IFCLK U21A DNI PA7 PB7 C_USB_MAX_TMS J1 TCK GCLK0p E1 FX2_PB7 14 45 FX2_PD0 C_USB_MAX_TDI H2 TMS
in „Low Cost Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Q_26MHz_SMD6035.pdf
satisfy requirements of the electrical characteristics. 5.3. Sealing Tightness Leak Rate 1.0x10¡¥7 Pa-m3/Sec. Max measured by Helium leak detector. 5.4. Solderability After applying ROSIN Flux, dipping in solder bath at 2¡5æ for 5 sec. Over 90% of terminal shall be coverred by solder. 6. Enviroment Performance: 6.1. Humidity Temperature 60¡æ± ¡2æ, RH 90~95%, Duration of 240 hours Back to room temperature first, then in 1~2 hours, the component shall be checked. The component shall satisfy requirement of the electrical characteristics. No physical damage
in „Woher bekommt man CC1100 Module“ · HF, Funk und Felder ·
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PDF
Q_26MHz_SMD6035.pdf
satisfy requirements of the electrical characteristics. 5.3. Sealing Tightness Leak Rate 1.0x10¡¥7 Pa-m3/Sec. Max measured by Helium leak detector. 5.4. Solderability After applying ROSIN Flux, dipping in solder bath at 2¡5æ for 5 sec. Over 90% of terminal shall be coverred by solder. 6. Enviroment Performance: 6.1. Humidity Temperature 60¡æ± ¡2æ, RH 90~95%, Duration of 240 hours Back to room temperature first, then in 1~2 hours, the component shall be checked. The component shall satisfy requirement of the electrical characteristics. No physical damage
in „Quarz 26Mhz, 10ppm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Q_26MHz_SMD6035.pdf
satisfy requirements of the electrical characteristics. 5.3. Sealing Tightness Leak Rate 1.0x10¡¥7 Pa-m3/Sec. Max measured by Helium leak detector. 5.4. Solderability After applying ROSIN Flux, dipping in solder bath at 2¡5æ for 5 sec. Over 90% of terminal shall be coverred by solder. 6. Enviroment Performance: 6.1. Humidity Temperature 60¡æ± ¡2æ, RH 90~95%, Duration of 240 hours Back to room temperature first, then in 1~2 hours, the component shall be checked. The component shall satisfy requirement of the electrical characteristics. No physical damage
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PDF
tlc2652a.pdf
RS= 50 Ω 25°C 0.003 0.06 0.003 0.02 µV/mo drift (see Note 4) 25°C 2 60 2 60 IO Input offset current pA Full range 100 100 25°C 4 60 4 60 IB Input bias current Full range 100 100 pA −5 −5 V Common-mode input voltage R = 50 Ω Full range to to V ICR range S 3.1 3.1 Maximum positive peak 25°C 4.7 4.8 4.7
in „Stromverbrauch eines Mikrocontrollers zeitaufgelöst messen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0A-ESP8266_WiFi_Specifications__English-V4.2.pdf
RF balun, high power PA capable of delivering +25dBm (peak), ESP8266EX ensures that the BOM cost is the lowest possible, and ease of integration into any system. With ESP8266, the only external BOM are resistors, capacitors
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PDF
0A-ESP8266_WiFi_Specifications__English-V4.2.pdf
RF balun, high power PA capable of delivering +25dBm (peak), ESP8266EX ensures that the BOM cost is the lowest possible, and ease of integration into any system. With ESP8266, the only external BOM are resistors, capacitors
in „Wlan2Serial Modul für 5 euro“ · Mikrocontroller und Digitale Elektronik ·
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PDF
srf02doku_dr.pdf
zu senden, definieren wir per Softwar einfach eine neue Software RS232 Schnittstelle auf die Ports PA0 und PA1. Dadurch können die SRF02´s sehr einfach an die orange Stecklemme von RN-Control angeschlossen werden. Wir können uns so den Stecker-Adapter sparen. Es wäre natürlich auch jeder andere freie
in „Berechnung der Entfernung mit SRF02“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina121.pdf
V Common-Mode Rejection VCM = –12.5V to 13.5V G = 1 78 86 72 dB G = 10 91 100 85 dB G = 100 96 106 90 dB G = 1000 106 dB BIAS CURRENT V = 0V ±4 ±50 pA CM vs Temperature See Typical Curve Offset Current ±0.5 pA vs Temperature See Typical Curve NOISE, RTI RS= 0 Voltage Noise: f = 10Hz G = 100 30 nV/√Hz
in „Pulsmessung über Kontaktflächen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
04_TLV272CDR.pdf
Frequency Supply Voltage 120 120 180 T = 25°C B A 100 135 ( 100 B t ( Phase a VDD= 5 V, 10 V i 80 90 R 80 a i G 60 45 ) c V = 2.7 V g Gain ( e 60 DD l 40 0 s R V h l a P p 40 t 20 -45 u r VDD = 5 V r e 0 RL= 2 kW -90 e 20 D C = 10 pF o -20 L -135 P TA= 25 C 0 -40 -180 10 100 1 k 10 k 100 k 1 M 10 100
in „TLV272 Rail to Rail Problem DIODES“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STK200.PDF
Support The system software currently has support for the following Atmel devices. AVR Devices: •AT90S1200 •AT90S2313 •AT90S/LS2323 •AT90S/LS2343 •AT90S4414 •AT90S/LS4434 •AT90S8515 •AT90S/LS8535 Software upgrades for the AVR ISP software is posted to the AVR section of the Atmel website, which is located
in „Absolute Verzweiflung. STK200 und PonyProg“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200_doc.pdf
Support The system software currently has support for the following Atmel devices. AVR Devices: ■ AT90S1200 ■ AT90S2313 ■ AT90S/LS2323 ■ AT90S/LS2343 ■ AT90S4414 ■ AT90S/LS4434 ■ AT90S8515 ■ AT90S/LS8535 Software upgrades for the AVR ISP software is posted to the AVR section of the Atmel website, which
in „Kanda AVR Starterboard und noch keine Ahnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Yaskawa-SGDB-xxADx-x-TSE-S800-16E.pdf
Phase B is 90° Phase B is 90° 3 x 2 multiplier: forward from phase B behind phase B 400 kpps x 4 multiplier: 200 kpps CCW pulse + CW pulse Maximum reference CCW pulse CW pulse frequency: 450 kpps ¨ reference © reference
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PDF
bourns-PTC-MF-R.pdf
MF-R050 60 40 0.50 1.00 0.41 0.77 1.17 2.5 4.0 0.75 MF-R065 60 40 0.65 1.30 0.27 0.48 0.72 3.25 5.3 0.90 MF-R075 60 40 0.75 1.50 0.18 0.40 0.60 3.75 6.3 0.90 MF-R090 60 40 0.90 1.80 0.14 0.31 0.47 4.5 7.2 1.00 MF-R090-0-9 30 40 0.90 1.80 0.07 0.12 0.22 4.5 5.9 0.60 MF-R110 30 40 1.10 2.20 0.10 0.18 0.27
in „Batteriehalter mit unbekannten Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
LM76.h
Defines *///--------------------------------------------------------------- #define LM76_ADRESSE 0x90 // Die I2C Adtresse des LM 76, hier 0b1001'0000 da beide Adresspins(A0,A1) auf 0 gezogen sind extern uint8_t error_flag; /*------------------------------------------------------------------ * Funktionen
in „Vergleich wird wegoptimiert“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SHT.c
include <inttypes.h> #include <avr/iom128.h> #include <inttypes.h> #include <math.h> #include <compat/ina90.h> #include <avr/delay.h> volatile void DATA(unsigned char set); volatile void SCK(unsigned char set); typedef union { unsigned int i; float f; } value; //--------------------------------------------
in „Prolbem AVRStudio mit GCC und Log10 ??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
gesamtinhalt-1967-2019_Call_Heft.pdf
fänger Wilfried Hercher DL 8 MX Eine quarzstabile Quelle für 10,37 GHz Jochen Jirmann DB 1NV 1985/2 90…96 Oszillatoren Eine quarzstabile Quelle für 10,37 GHz Jochen Jirmann DB 1NV 1985/2 90…96 3-cm-Band Ein V/D-D/A-Wandler für Video-Anwendungen Jochen Jirmann DB 1NV 1986/2 126 Sonstiges Neues zu aktiven
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PDF
gesamtinhalt-1967-2019_HeftNr.pdf
Fernsehen Amateur- Ringmischer-Baugruppe für den ATV-Sender nach DJ 4 LB Benno Rößle DJ 1 JZ 1981/2 85…90 Fernsehen Ringmischer-Baugruppe für den ATV-Sender nach DJ4LB Benno Rößle DJ 1 JZ 1981/2 85…90 70-cm-Band Extrem rauscharmer 96-MHz-Quarzoszillator für die UHF/SHF-Frequenz- Bernd Neubig DK 1 AG 1981
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PDF
stm32f030f4-956260.pdf
_RX (2) 0 (1)(3) 4 PA3 TIM15_CH2 (1)(3) - - - - - 8 USART2_RX 9 R USART1_CK (2) v (1) 3 PA4 SPI1_NSS (1)(3) - - TIM14_CH1 USART6_TX - USART2_CK PA5 SPI1_SCK - - - - USART6_RX (1) - (1) PA6 SPI1_MISO TIM3_CH1 TIM1_BKIN - USART3_CTS TIM16_CH1 EVENTOUT PA7 SPI1_MOSI TIM3_CH2 TIM1_CH1N - TIM14_CH1 TIM17_CH1 EVENTOUT PA8 MCO USART1_CK TIM1_CH1 EVENTOUT - - - PA9 TIM15_BKIN(1)(3) USART1_TX TIM1_CH2 - I2C1_SCL (1)(2) MCO (1) - PA10 TIM17_BKIN USART1_RX TIM1
in „STM32F030 interne REF ausreichend für 12Bit?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
en.DM00088500.pdf
_RX (2) 0 (1)(3) 4 PA3 TIM15_CH2 (1)(3) - - - - - 8 USART2_RX 9 R USART1_CK (2) v (1) 3 PA4 SPI1_NSS (1)(3) - - TIM14_CH1 USART6_TX - USART2_CK PA5 SPI1_SCK - - - - USART6_RX (1) - (1) PA6 SPI1_MISO TIM3_CH1 TIM1_BKIN - USART3_CTS TIM16_CH1 EVENTOUT PA7 SPI1_MOSI TIM3_CH2 TIM1_CH1N - TIM14_CH1 TIM17_CH1 EVENTOUT PA8 MCO USART1_CK TIM1_CH1 EVENTOUT - - - PA9 TIM15_BKIN(1)(3) USART1_TX TIM1_CH2 - I2C1_SCL (1)(2) MCO (1) - PA10 TIM17_BKIN USART1_RX TIM1
in „Controller IC für digitale RGBW LED-Streifen“ · Mikrocontroller und Digitale Elektronik ·
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nRF24L01_.pdf
55,E5,8E,D0,F9,C4,BF,1C,B0,05,2F,08,BE,5E,E8, 91 T40X:00,40,02,FF,0C RX:00,FF,12,FE,0C,FE,A8,B8,85,90,BB,FA,79,53,01,13,64,ED,E7,80,04 Key,7F,B4,74,94,6A,02,71,DE,90,A4,F2,88,4E,89,32,30 Schön zu sehen das ab #b die Autorisierung angehängt wird, b ist wieder die Anfrage ID, der Rest der zuvor erzeugte
in „Repeating und Routing Netzwerk mit Arduino und nRF24L01+“ · Projekte & Code ·
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noctua_nf_a14_industrialPPC_3000_pwm_specs_en.pdf
Direction Counter-Clockwise 1.2. Dimensions P - P r u i 1 F A C N 2-7 1.3. Parts & Materials Plastic Type PA66 + 30% GF Bearing SSO2 Bearing Wire UL 1007 / 26 AWG, Mesh-Sleeving Connector 2543-4PIN (or equal) 1.4. Standards Production Standards Produced according to ISO9001 & ISO14001 Safety Standards CE (EN
in „PWM-Controller ohne Poti aber mit Steuerspannung“ · Analoge Elektronik und Schaltungstechnik ·
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semicon.pdf
354 IC Microchip PIC16F877 20/L LQFP44 20 IC Atmel AT90S4414 4AI LQFP44 640 IC NEC uPD70F3007GC 25 TQFP100 360 IC Xilinx XCS30XL 5TQ 144C TQFP 144 50 IC Sharp LH28F160BJE TTL90 Flash TSOP48 1920 IC Fujitsu MBM29LV004T 12PNS Flash LCC40 3022 IC Intel GT28F160C3BA
in „4" TFT für 7,97€“ · Markt ·
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NL6448BC33-64__DOD-PP-0108_.pdf
terminal). When designing the inverter, evaluate asymmetric of lamp working waveform sufficiently. Pa |Pa - Pb| Sa Pb × 100 ≤ 5% 0 Sb |Sa - Sb| Sb × 100 ≤ 5% Pb Pa: Supply voltage/current peak for positive, Pb: Supply voltage/current peak for negative Sa: Waveform space for positive part, Sb: Waveform
in „Display ansteurern“ · Mikrocontroller und Digitale Elektronik ·
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ATtiny841_Datasheet.pdf
/RXD0) PB2 5 10 PA3 (PCINT3/ADC3/AIN10/TOCC2/T0/XCK0/SCK) (PCINT7/ADC7/TOCC6/ICP1/TXD0/SS) PA7 6 9 PA4 (PCINT4/ADC4/AIN11/TOCC3/T1/RXD1/SCL/SCK) (PCINT6/ADC6/ACO1/TOCC5/XCK1/SDA/MOSI) PA6 7 8 PA5 (PCINT5/ADC5/ACO0/TOCC4
in „TOCPMSA1 und TOCPMCOE Verhalten beim Attiny 841“ · Mikrocontroller und Digitale Elektronik ·
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ATtiny441_841.pdf
/RXD0) PB2 5 10 PA3 (PCINT3/ADC3/AIN10/TOCC2/T0/XCK0/SCK) (PCINT7/ADC7/TOCC6/ICP1/TXD0/SS) PA7 6 9 PA4 (PCINT4/ADC4/AIN11/TOCC3/T1/RXD1/SCL/SCK) (PCINT6/ADC6/ACO1/TOCC5/XCK1/SDA/MOSI) PA6 7 8 PA5 (PCINT5/ADC5/ACO0/TOCC4
in „Suche nach ATtiny mit ADC und Gain > 20x“ · Mikrocontroller und Digitale Elektronik ·